METHOD FOR LIFTING FACTORY BUILDING FLOOR IN WEAK SOIL LAYER GEOLOGY
20260117484 ยท 2026-04-30
Inventors
Cpc classification
International classification
Abstract
The present application relates to a method for lifting a factory building floor in a weak soil layer geology, including: S1, measurement: measuring a settlement numerical value of a floor of a factory building and a depth of a weak soil layer; S2, determining grouting point locations: marking grouting point locations on a ground of the factory building, with equal distances between adjacent point locations; S3, inserting grouting pipes: inserting a plurality of grouting pipes at the grouting point locations, the grouting pipes passing through the weak soil layer and abutting against the bearing layer; and S4, grouting: forming support columns by grouting into the grouting pipes, while simultaneously withdrawing the grouting pipes from the weak soil layer.
Claims
1. A method for lifting a factory building floor in a weak soil layer geology, comprising the following steps: S1, measuring a settlement numerical value of a floor of a factory building and a depth of a weak soil layer; S2, marking grouting point locations on a ground of the factory building, wherein all of the grouting point locations are arranged in a square array, with equal distance between adjacent grouting point locations of the grouting point locations in both horizontal and vertical directions; S3, inserting a plurality of grouting pipes at the grouting point locations, with the plurality of grouting pipes passing through the weak soil layer and abutting against a bearing layer; and S4, forming a support column by grouting into each of the plurality of grouting pipes, while simultaneously withdrawing the plurality of grouting pipes from the weak soil layer during the grouting.
2. The method for lifting a factory building floor in a weak soil layer geology according to claim 1, wherein in the step S2, spacings between horizontally adjacent grouting point locations of the grouting point locations and vertically adjacent grouting point locations of the grouting point locations are both 5 meters.
3. The method for lifting a factory building floor in a weak soil layer geology according to claim 1, wherein in the step S3, five of the plurality of grouting pipes are inserted at each of the grouting point locations, one of the five grouting pipes is vertically inserted into a corresponding one of the grouting point locations, and four remaining grouting pipes of the five grouting pipes are obliquely arranged around the grouting pipe vertically inserted respectively, inclined support columns formed by four remaining grouting pipes obliquely arranged are connected to one end of the support column vertically arranged.
4. The method for lifting a factory building floor in a weak soil layer geology according to claim 3, wherein the support columns formed by grouting the plurality of grouting pipes constitute a cross-grid support structure.
5. The method for lifting a factory building floor in a weak soil layer geology according to claim 4, wherein in the step S4, when grouting into the plurality of grouting pipes, for two grouting pipes of the plurality of grouting pipes located at different grouting point locations and intersecting with each other, grouting is first performed on portions below an intersection position of the two grouting pipes.
6. The method for lifting a factory building floor in a weak soil layer geology according to claim 5, wherein the step S4 further comprises pouring a grouting reinforcement layer, wherein the grouting reinforcement layer is arranged at a middle portion of the grouting pipe vertically inserted.
7. The method for lifting a factory building floor in a weak soil layer geology according to claim 6, wherein the grouting reinforcement layer is horizontally arranged and has an area larger than that of the floor of the factory building.
8. The method for lifting a factory building floor in a weak soil layer geology according to claim 1, wherein in the step S4, a height of the floor is monitored in real time by using floor elevation monitoring equipment during grouting.
9. The method for lifting a factory building floor in a weak soil layer geology according to claim 1, wherein in the step S4, a grouting material is a high-aluminum-iron composite special slurry.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION
[0036] The present application will be further described in detail below with reference to
[0037] An embodiment of the present application discloses a method for lifting a factory building floor of in a weak soil layer geology. The method includes the following steps: S1, measurement: with reference to
[0038] S2, determining grouting point locations 4: with reference to
[0039] S3, inserting grouting pipes: referring to
[0040] Compared with full grouting of the weak soil layer 3, the cross-grid support structure formed after grouting not only saves a large amount of grouting material and reduces construction cost, but also has good stability, providing sufficient supporting force for the factory building 1.
[0041] S4, grouting: grouting into the grouting pipe to form a support column 5; in the present embodiment, the grouting material is high-aluminum-iron composite special slurry, and the high-aluminum-iron composite special slurry can consolidate the loose soil layer into a new structural body, thereby raising the floor height of the factory building 1; furthermore, the setting time and slurry diffusion radius of the high-aluminum-iron composite special slurry are controllable, enabling rapid formation of fixed-shape support column 5 to support the floor of the factory building 1 and reduce the probability of secondary settlement of the factory building 1.
[0042] During grouting of the grouting pipe, the grouting pipe is gradually withdrawn away from the bearing layer 2 while grouting, allowing the grout to consolidate the surrounding weak soil layer 3 while forming the support column 5, thereby increasing the floor height of the factory building 1.
[0043] With reference to
[0044] During grouting operations, grouting is first performed on the grouting pipe vertically inserted to form a vertical support column 5; and when the vertical support column 5 reaches the height of the grouting reinforcement layer 6, grouting of the grouting pipe vertically inserted is stopped. Then, grouting is sequentially performed on intersecting grouting pipes located at different grouting point locations 4; one of the intersecting grouting pipes is first grouted to the intersection section, and after that, grouting is paused; the other intersecting grouting pipe is then inserted into the bearing layer 2 and grouted until the two obliqued support columns 5 intersect; and finally, synchronous grouting is performed on the grouting pipe above the intersection section. The grouting work shall be performed in segmented construction to avoid the structure below the intersection section from being unable to undergo grouting due to intersecting operations.
[0045] After all grouting pipes complete grouting to form a cross-grid support column 5, a plurality of grouting pipes are vertically and equidistantly inserted into the factory building 1 floor such that one end of each grouting pipe lies in the plane where the grouting reinforcement layer 6 is located; and simultaneously, grouting is performed on the grouting reinforcement layer 6 so that the grout flows and solidifies within the plane where the grouting reinforcement layer 6 is located, thereby forming the grouting reinforcement layer 6. The grouting reinforcement layer 6 can enhance the stability of the underpart cross-grid structure. Concurrently, the grouting reinforcement layer 6 can share the load borne by the support column 5, thereby increasing the load-bearing value of the support column 5. Moreover, the grouting reinforcement layer 6 increases the consolidation strength of the weak soil layer, reducing the likelihood of secondary settlement in the weak soil layer.
[0046] The factory building 1 is provided therein with floor elevation monitoring equipment. During grouting, the floor elevation monitoring equipment can monitor the floor height, and on the one hand it facilitates the observation of whether the floor of the factory building 1 has recovered to its original elevation. Besides, it can monitor whether uplift occurs at the floor of the grouting point location 4.
[0047] The implementation principle of the method for lifting a factory building floor on weak soil layer geology, according to the embodiment of the present application, is as follows: first, measuring the thickness of the weak soil layer 3 and the settlement height of the factory building 1 floor; determining the grouting point location 4 on the factory building 1 floor; and calculating the required number and length of grouting pipes based on the number of grouting point locations 4 and the thickness of the weak soil layer 3.
[0048] Grouting pipes are inserted into the grouting point locations 4, with one grouting pipe vertically inserted into any one of the grouting point locations 4, and a left-obliqued 450 grouting pipe, a right-obliqued 450 grouting pipe, a front-obliqued 450 grouting pipe, and a rear-obliqued 450 grouting pipe inserted with the vertical grouting pipe as the center. Grouting is first performed successively at positions below the intersecting portions of the grouting pipes, followed by performing grouting at positions of the upper portion of the intersection of the grouting pipes until the support column 5 is completed, thereby forming a mesh-like intersecting support structure; and finally, grouting is performed on the grouting reinforcement layer 6 to provide supporting force to the support column 5.
[0049] The foregoing are merely preferred embodiments of the present application and are not intended to limit the scope of protection of the present application. Therefore, all equivalent modifications made to the structure, shape, and principle of the present application shall fall within the scope of protection of the present application.
LISTING OF REFERENCE SIGNS
[0050] 1, factory building; [0051] 2, bearing layer; [0052] 3, weak soil layer; [0053] 4, grouting point location; [0054] 5, support column; [0055] 6, grouting reinforcement layer.